Cargando…

The music of the Big Bang: the cosmic microwave background and the new cosmology

The cosmic microwave background radiation is the afterglow of the big bang: a tenuous signal, more than 13 billion years old, which carries the answers to many of the questions about the nature of our Universe. It was serendipitously discovered in 1964, and thoroughly investigated in the last four d...

Descripción completa

Detalles Bibliográficos
Autor principal: Balbi, Amedeo
Lenguaje:eng
Publicado: Springer 2008
Materias:
Acceso en línea:https://dx.doi.org/10.1007/978-3-540-78728-0
http://cds.cern.ch/record/1331585
_version_ 1780921751662755840
author Balbi, Amedeo
author_facet Balbi, Amedeo
author_sort Balbi, Amedeo
collection CERN
description The cosmic microwave background radiation is the afterglow of the big bang: a tenuous signal, more than 13 billion years old, which carries the answers to many of the questions about the nature of our Universe. It was serendipitously discovered in 1964, and thoroughly investigated in the last four decades by a large number of experiments. Two Nobel Prizes in Physics have already been awarded for research on the cosmic background radiation: one in 1978 to Arno Penzias and Robert Wilson, who first discovered it, the other in 2006, to George Smoot and John Mather, for the results of the COBE satellite. Most cosmological information is encoded in the cosmic background radiation by acoustic oscillations in the dense plasma that filled the primordial Universe: a "music" of the big bang, which cosmologists have long been trying to reconstruct and analyze, in order to distinguish different cosmological models, much like one can distinguish different musical instruments by their timbre and overtones. Only lately, this amazing cosmic sound has been unveiled by such experiments as BOOMERANG and MAXIMA and, more recently, by the WMAP satellite. This led to a giant leap in our understanding of the Universe, but the investigation is not ended yet. The book focuses on how the exploration of the cosmic background radiation has shaped our picture of the Universe, leading even the non-specialized readers towards the frontier of cosmological research, helping them to understand, using a simple language and captivating metaphors, the mechanisms behind the Universe in which we live. "This non-technical tour of the discovery and significance of the whispers of creation, the fossil radiation from the Big Bang, is a delight to read." Prof. Joe Silk, University of Oxford, a pioneering contributor to understanding the structure of the cosmic background radiation.
id cern-1331585
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2008
publisher Springer
record_format invenio
spelling cern-13315852021-04-22T01:07:53Zdoi:10.1007/978-3-540-78728-0http://cds.cern.ch/record/1331585engBalbi, AmedeoThe music of the Big Bang: the cosmic microwave background and the new cosmologyGeneral Relativity and CosmologyThe cosmic microwave background radiation is the afterglow of the big bang: a tenuous signal, more than 13 billion years old, which carries the answers to many of the questions about the nature of our Universe. It was serendipitously discovered in 1964, and thoroughly investigated in the last four decades by a large number of experiments. Two Nobel Prizes in Physics have already been awarded for research on the cosmic background radiation: one in 1978 to Arno Penzias and Robert Wilson, who first discovered it, the other in 2006, to George Smoot and John Mather, for the results of the COBE satellite. Most cosmological information is encoded in the cosmic background radiation by acoustic oscillations in the dense plasma that filled the primordial Universe: a "music" of the big bang, which cosmologists have long been trying to reconstruct and analyze, in order to distinguish different cosmological models, much like one can distinguish different musical instruments by their timbre and overtones. Only lately, this amazing cosmic sound has been unveiled by such experiments as BOOMERANG and MAXIMA and, more recently, by the WMAP satellite. This led to a giant leap in our understanding of the Universe, but the investigation is not ended yet. The book focuses on how the exploration of the cosmic background radiation has shaped our picture of the Universe, leading even the non-specialized readers towards the frontier of cosmological research, helping them to understand, using a simple language and captivating metaphors, the mechanisms behind the Universe in which we live. "This non-technical tour of the discovery and significance of the whispers of creation, the fossil radiation from the Big Bang, is a delight to read." Prof. Joe Silk, University of Oxford, a pioneering contributor to understanding the structure of the cosmic background radiation.Springeroai:cds.cern.ch:13315852008
spellingShingle General Relativity and Cosmology
Balbi, Amedeo
The music of the Big Bang: the cosmic microwave background and the new cosmology
title The music of the Big Bang: the cosmic microwave background and the new cosmology
title_full The music of the Big Bang: the cosmic microwave background and the new cosmology
title_fullStr The music of the Big Bang: the cosmic microwave background and the new cosmology
title_full_unstemmed The music of the Big Bang: the cosmic microwave background and the new cosmology
title_short The music of the Big Bang: the cosmic microwave background and the new cosmology
title_sort music of the big bang: the cosmic microwave background and the new cosmology
topic General Relativity and Cosmology
url https://dx.doi.org/10.1007/978-3-540-78728-0
http://cds.cern.ch/record/1331585
work_keys_str_mv AT balbiamedeo themusicofthebigbangthecosmicmicrowavebackgroundandthenewcosmology
AT balbiamedeo musicofthebigbangthecosmicmicrowavebackgroundandthenewcosmology